Title: FABRICATION OF A NUCLEAR SPIN
1FABRICATION OF A NUCLEAR SPIN QUANTUM COMPUTER
IN SILICON
Robert G. Clark
Professor of Experimental Physics The University
of New South Wales Director National Magnet
Laboratory and Semiconductor Naofabrication
Facility
2MOTIVATION
- Quantum Computers will be the worlds fastest
computing devices, e.g. decryption (prime factors
of a composite number)- Factor a 400 digit
number 108 times faster - Spin-off technology development for conventional
silicon processing at the sub-1000Ã… scale
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4QUANTUM MECHANICAL COMPUTATION
5QUANTUM vs CONVENTIONAL COMPUTERS
6QUANTUM LOGIC Any quantum computation can be
reduced to a sequence of 1 and 2 qubit
operations H ingt H1 H2 H3 .... Hn
ingt Conventional operations NOT, AND
Quantum operations NOT, CNOT
7QUANTUM ALGORITHMS
Superposition and entanglement enables massive
parallel processing Shors prime factorization
algorithm (1994) relevant to cryptography Grover
s exhaustive search algorithm (1996)
QC
All Problems
Factoring
CC
Quantum Physics Problems
NP-Hard Problems?
Exhaustive Search
8EXPERIMENTAL QUANTUM COMPUTATION Bulk spin
resonance (Stanford, MIT) 1-10?
qubits Trapped cooled ions (Los Alamos,
Oxford) 1-100? qubits
True quantum computer may require 106 qubits
Solid state (semiconductor) quantum computer
architectures proposed using electron and nuclear
spin to store qubits
Electrons D. Loss and D. DiVincenzo, Phys. Rev.
A 57, 120 (1998). Nuclei V. Privman, I. D.
Vagner, and G. Kventsel, Phys. Lett. A in press,
quant-ph/9707017.
9In SiP at Temperature (T)1K electron
relaxation time 1 hour nuclear relaxation time
1013 hours
10A Silicon-based nuclear spin quantum
computer B. E. Kane, Nature, May 14, 1998
200 Ã…
11A J GATES
12- Fabrication strategy involves
- Atom-scale lithography using STM H-resist
- MBE growth
- EBL patterning of A, J-Gates
- EBL patterning of SETs
- Spin measurement by SETs or magnetic resonance
force microscopy - Major collaboration with Los Alamos National
Laboratory, funded through US National Security
Agency
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15SPIN READOUT
16SINGLE ELECTRON TRANSISTORS
17SEMICONDUCTOR NANOFABRICATION FACILITY
- Established 1995
- Consortium of major Universities in the
Sydney area - Physics, Engineering Research Team
- GaAs nanostructures ? Si - Quantum wire
transistors - 200 Ã… (0.02?m) feature sizes
18ELECTRON BEAM LITHOGRAPHY
Sub-300Ã… AuPd gates on GaAs
19UNSW 3-CHAMBER UHV STM / AFM, MBE, ANALYSIS
20STM / AFM AT UNSW
- 25K - 1500K Variable T
- 3-Chamber UHV
- Plus
- SiMBE
- RHEED
- LEED
- Auger
21SRC MANAGEMENT STRUCTURE
22PROJECT TIMETABLE
23SUMMARY
- Quantum Computers have enormous potential
- Solid-state quantum computation is the best
candidate for scalability - Offers integration with existing Si technology
- UNSW strategy to use qubits stored on nuclear
spins (concept by Kane)